Unverified paper record
Using Silicon Polymer Impression Technique and Scanning Electron Microscopy to Measure Stomatal Aperture, Morphology, and Density.
Bio-protocol · 20 Aug 2017 · 10.21769/bioprotoc.2449
Abstract
The number of stomata on leaves can be affected by intrinsic development programming and various environmental factors, in addition the control of stomatal apertures is extremely important for the plant stress response. In response to elevated temperatures, transpiration occurs through the stomatal apertures, allowing the leaf to cool through water evaporation. As such, monitoring of stomata behavior to elevated temperatures remains as an important area of research. The protocol allows analysis of stomatal aperture, morphology, and density through a non-destructive imprint of Arabidopsis thaliana leaf surface. Stomatal counts were performed and observed under a scanning electron microscope.
Plant phenotyping relevance
シリコンポリマー印象法と走査電子顕微鏡を用いて、葉の気孔開度・形態・密度を非破壊測定する具体的な表現型取得プロトコルが中心である。
abstractThe protocol allows analysis of stomatal aperture, morphology, and density through a non-destructive imprint of Arabidopsis thaliana leaf surface.
abstractStomatal counts were performed and observed under a scanning electron microscope.
Code and data availability
This is a Bio-protocol methods article describing a silicon impression/SEM technique for measuring stomatal aperture, morphology, and density. The only software mentioned is ImageJ, a generic third-party image analysis library cited with its standard URL, not an authors' deposited analysis code, dataset, image set, or训
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